ڈاکٹر شہزاد احمد کی ادبی خدمات کا اجمالی جائزہ
شاعر علی شاعرؔ
حمد و نعت خوانی کا ذکر ہو یا حمد و نعت نگاری کی بات، یا پھر نعتیہ ادب کی تنقید و تحقیق، تدوین و ترتیب کا تذکرہ، بات ڈاکٹر شہزاد احمد تک پہنچتی ہے۔ اُنھوں نے حمد و نعت جیسی متبرک اصنافِ سخن سے خود کو نصف صدی سے وابستہ کیا ہوا ہے۔ یہی اُن کا اوڑھنا بچھونا ہے اور اُنھوں نے اپنی زندگی کے تمام ماہ و سال اِنھی متبرک اصنافِ سخن کو دیے ہوئے ہیں اور خود کو حمد و نعت کی تخلیق، تنقید، تحقیق، ترویج، فروغ اور اشاعت کے لیے وقف کیا ہوا ہے۔ یہی اُن کا تخصص ہے اور یہی اُن کی انفرادیت ، کیوں کہ ہزار ہا افراد جو حمد و نعت سے اگروابستہ ہیں تو جزوقتی، ایک طرف وہ کوئی نہ کوئی دیگر مصروفیات رکھتے ہیں اور دوسری طرف حمد و نعت کا کام کرتے ہیں، مگر ڈاکٹر شہزاد احمد کو میں نے ہمیشہ ایک ہی کام کی طرف مائل دیکھا ہے وہ ہے حمد و نعت کا فروغ۔ وہ ذکر بھی کرتے ہیں تو حمد و نعت نگاری کا۔ یہی وجہ ہے کہ ہمیشہ اُن کو محافلِ نعت میں بہ حیثیت نعت خواں، نعتیہ مشاعروں میں بہ حیثیت نعت گو شاعر اور نعتیہ ادب کے پروگراموں میں بہ حیثیت نظامت کار دیکھا ہے۔
یہ حقیقت ہے کہ جس قلم کار کے ہاتھ میں اللہ رب العزت نے قلم تھما دیا ہو وہ سبھی کچھ لکھ سکتا ہے اور لکھتا ہے۔ سیکڑوں افراد نے قلمی نگارشات کو اپنا ذریعۂ معاش بنایا ہوا ہے، مگر میں نے ڈاکٹر شہزاد احمد کو حمد و نعت کے علاوہ نہ تو کبھی غزل پر لکھتے پایا اور نہ کبھی کسی غزلیہ مجموعے پر مقدمہ تحریر کرتے دیکھا۔ وہ خفیہ ہو...
Honey is an unparalleled treasure of medicinal properties. Honey has the ability to strengthen the human body's immune system. Therefore, the use of honey and other natural foods is extremely beneficial and effective in current epidemic environment. Honey is one of the most appreciated and valued natural blessing of Allah for human being. Medicinal importance of honey hase been described in Holy Quran. Holy prophet (SAW) has advised to use honey because honey provides body instant energy. There are several varieties of honey are found in different areas of the world. Honey has been taken for research because of its nutritional popularity and medicinal quality. Honey is high in important nutrients of benefits and uses. Honey contains carbohydrates, vitamins, minerals and a significant amount of fiber. Nutrients of honey can improve digestive system by preventing constipation. Immunity system can be improved by using honey in epidemic environment. Honey is a source of fructose, which does not harm patients of diabetes. The fructose makes a better substitute for sugar because of the fiber, nutrients and antioxidants. Honey is comprised of several minerals including phosphorus, iron, potassium, calcium and magnesium. Honey has very small amount of protein and fats. This research paper analyzes ingredients and minerals of honey in Islamic perspective. The research work highlights medical benefits of honey in the light of modern science and Islamic teachings in the current epidemic environment.
Wireless Sensor Networks (WSNs) have a great potential to assist in storing and processing data collected from tiny sensors placed in various environments such as smart homes, vehicles, hospitals, enemy surveillance areas, volcanoes, oceans, etc. The sensors may be implanted to inspect the physical aspects of the external environment such as temperature, moisture, humidity, pressure, motion, magnetic fields, light, sound, gravity, vibration, electrical fields, and others or inspect the physical aspects of the internal environments such as motion of the organism, glucose level, oxygen level and others. The data recorded by these sensors can further be used for several applications as well as services. Here, the data is acquired from sensors through the wireless medium. Recent studies show that WSNs are vulnerable to various kinds of security threats and there is a requirement of a security solution that can safeguard them from lethal attacks. Several security schemes have been proposed in the recent past to counter the attacks launched at different layers of WSNs. Intrusion detection systems (IDS) focus on the detection of malicious activity at the network layer. Most of the proposed IDS based security approaches for WSNs lack completeness with respect to data acquisition, detection policy and the way actions should be taken once the malicious behavior is detected. Further, they lack the proper testing of the proposed schemes with respect to the performance metrics such as energy consumption, throughput, false positive rate, intrusion detection rate, and accuracy etc. Hence, there is a requirement of a purely distributed security scheme that works independently and communicates the anomalous behavior of sensor nodes with the base station (BS). The scheme should be lightweight and is able to perform efficiently with respect to energy efficiency and throughput. Moreover, it should be able to achieve low false positive rate and high detection rate. In this thesis, a novel intrusion detection framework is proposed for securing WSNs from routing attacks. The proposed system works in a distributed environment to detect intrusions by collaborating with the neighboring nodes. It works in two modes: online prevention allows safeguarding from those abnormal nodes that are already declared as malicious, while offline detection finds those nodes that are being compromised by an adversary during the next epoch of time. The proposed framework is a specification-based detection framework that works for a flat WSN scenario. To test the performance of the proposed framework, a simulator is implemented, and results are produced. The results show that a centralized distributed approach cannot properly figure out the actual condition of the network. Therefore, a purely distributed security system is more appropriate for WSNs. The results also show that the specification-based detection scheme achieves higher detection rate and low false positive rate. These results also guide that each node should be treated independently in WSNs, and centralized distributed detection schemes may fail to identify the network behavior whether it is normal or is under any attack. As a second contribution, the low-energy adaptive clustering hierarchy (LEACH) protocol for WSNs is modified by adding the functionality of the proposed intrusion detection framework to secure it from sink-hole, black-hole, and selective forwarding attacks. The modified protocol is called LEACH++. We performed two types of analyses: (1) numerical analysis to check the effect on vi throughput and energy, and (2) simulations in Network Simulator-2 (NS-2) to prove the results found from the numerical analysis. The results are quite promising and favor LEACH++ over LEACH under attack with respect to throughput and energy consumption. The third contribution is to perform a security analysis of the LEACH++ protocol to validate the proposed specification-based detection scheme with respect to accuracy, false positive rate, and detection rate. For this purpose, we simulate LEACH++ by launching various numbers of attacks in different patterns for different configurations. The experiments are carried out against the LEACH++ protocol for black hole and sinkhole attacks in different patterns. The results show that the proposed scheme achieves high accuracy and detection rate for LEACH++ and shows very low false positive rate.